Bound state solutions of the Schrödinger equation with energy-dependent molecular Kratzer potential via asymptotic iteration method



Título del documento: Bound state solutions of the Schrödinger equation with energy-dependent molecular Kratzer potential via asymptotic iteration method
Revue: Ecletica quimica
Base de datos:
Número de sistema: 000552524
ISSN: 0100-4670
Autores: 3
4
3
1
3
2
3
Instituciones: 1Department of Physical Sciences, Landmark University, Omu-Aran, Nigeria,
2Department of Physics, University of Calabar-Nigeria,
3Theoretical Physics Group, Department of Physics, University of Port Harcourt Nigeria,
4Theoretical Physics Group, Department of Physics, University of Port Harcourt NigeriaDepartment of Physics, Akwa Ibom State University, Ikot Akpaden-Nigeria,
Año:
Volumen: 45
Número: 1
Paginación: 65-76
País: Brasil
Idioma: Inglés
Resumen en inglés In this paper, we obtained the exact bound state energy spectrum of the Schrödinger equation with energy dependent molecular Kratzer potential using asymptotic iteration method (AIM). The corresponding wave function expressed in terms of the confluent hypergeometric function was also obtained. As a special case, when the energy slope parameter in the energy-dependent molecular Kratzer potential is set to zero, then the well-known molecular Kratzer potential is recovered. Numerical results for the energy eigenvlaues are also obtained for different quantum states, in the presence and absence of the energy slope parameter. These results are discussed extensively using graphical representation. Our results are seen to agree with the results in literature.
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